Published July 8, 1999 | Version v1
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Study of genes induced by ionizing radiations at Arabidopsis thaliana: identification and molecular characterization of the ATGR1 gene, a new gene encoding a protein involved in plant cell division

Description

DNA damage, that can be experimentally introduced by ionizing radiation (IR), induces complex signal transduction pathways leading to cell recovery or, alternatively to programmed cell death if damages are too severe. To identify the inducible components of the response to genotoxic stress in plants, we have screened by Differential Display for mRNAs that rapidly and strongly accumulate after IR treatment in A. thaliana cells. We have characterized ATGR1, a new single copy Arabidopsis gene encoding a PEST-box protein of unknown function. In unstressed plant organs the ATGR1 mRNA is hardly detectable, whereas the protein is present in extracts prepared from roots, shoot meristems and inflorescences, that all contain large amounts of actively dividing cells. This pattern is confirmed by immuno localisation on tissue sections that shows constitutive ATGR1 protein expression covering the root elongation zone, the shoot meristem, leaf primordial and the ovules of developing flowers. Histochemical analysis of transgenic plants expressing the GUS reporter gene under the control of the ATGR1 promoter, demonstrate that the developmental and tissue-specific profile of ATGR1 protein expression is conferred by the gene promoter. The massive, transient and dose-dependent accumulation of ATGR1 transcripts after IR treatment observed in all plant organs does not lead to significant changes in ATGR1 protein pattern. Stable ATGR1 protein overexpression, as exemplified by transgenic A. thaliana plants that contain a 35S promoter-ATGR1 gene fusion, does not induce notable changes of the overall ATGR1 protein level, but leads to male and female sterility. The cause of sterility is a lack of correct chromosome assembly and distribution at the stage metaphase II of meiosis. Taken together our results show that i) ATGR1 gene expression is associated to cell division during plant development ii) the ATGR1 protein level is regulated at the transcriptional and post-transcriptional level iii) transient ATGR1 protein destabilisation induced by DNA damage is compensated by enhanced neo-synthesis to maintain crucial intracellular ATGR1 protein levels iv) perturbation of this intracellular equilibrium through ectopic overexpression of ATGR1 protein induces defects at the level of meiosis and mitosis and leads to plant sterility. (author)

Abstract (French)

Les lesions de l'ADN, que l'on peut introduire experimentalement par les rayonnements ionisants (RI), activent les voies de transduction du signal necessaires pour l'arret du cycle cellulaire et la reparation ou, alternativement, la mort cellulaire programmee. Au cours de ce travail, nous avons isole et caracterise le gene ATGR1, dont les ARNm accumulent rapidement et fortement apres irradiation γ. Le gene code pour une proteine de fonction inconnue et possedant une boite PEST susceptible de moduler son temps de demi-vie. Alors que les ARNm ATGR1 sont difficilement decelables dans une plante non-stressee, la proteine est significativement presente dans des extraits prepares a partir de racines, du meristeme apical et des inflorescences. Ce profil est confirme immunolocalisation sur coupes histologiques, qui montrent une expression constitutive de la proteine ATGR1 dans la zone d'elongation racinaire, le meristeme apical, les primordia foliaires et les ovules de fleurs en developpement. Cette distribution spatio-temporelle au cours du developpement est conferee par le promoteur du gene ATGR1. L'accumulation transitoire du transcrit ATGR1, induit par les radiations ionisantes dans tous les tissus vegetaux, ne conduit pas a un changement significatif de la teneur en ATGR1. La surexpression stable de la proteine sous controle du promoteur constitutif fort 35S ne change pas la teneur globale en proteine ATGR1, mais induit la sterilite des plantes transgeniques. Cette sterilite est due a des defauts de l'assemblage des chromosomes et de leur distribution au stade metaphase II de la meiose dans les lignees germinales femelles et males. L'ensemble de nos resultats suggerent que: 1) la proteine ATGR1 est liee a une activite de division (mitose et meiose) au cours du developpement 2) la concentration intracellulaire en proteine ATGR1 est controlee au niveau transcriptionnel et post-transcriptionnel 3) la destabilisation transitoire et specifique de la proteine ATGR1 par les radiations ionisantes est compensee par une neosynthese accrue pour maintenir son niveau intracellulaire. L'importance du maintien de ce niveau dans les cellules en division est souligne par l'apparition de graves defauts au niveau de la meiose en cas de surexpression constitutive de la proteine ATGR1

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Additional details

Additional titles

Original title (French)
Etude de genes induits par les rayonnements ionisants chez Arahidopsis thaliana: Identification et caracterisation moleculaire du gene ATGR1, un nouveau gene qui code pour une proteine associee a la division cellulaire

Publishing Information

Imprint Pagination
265 p.
Report number
FRCEA-TH--6345

INIS

Country of Publication
France
Country of Input or Organization
France
INIS RN
46133730
Subject category
S63: RADIATION, THERMAL, AND OTHER ENVIRONMENTAL POLLUTANT EFFECTS ON LIVING ORGANISMS AND BIOLOGICAL MATERIALS;
Resource subtype / Literary indicator
Thesis
Descriptors DEI
ARABIDOPSIS; DNA DAMAGES; GAMMA RADIATION; IONIZING RADIATIONS; ROOTS; STERILITY; TRANSGENIC PLANTS
Descriptors DEC
ELECTROMAGNETIC RADIATION; IONIZING RADIATIONS; MAGNOLIOPHYTA; MAGNOLIOPSIDA; PLANTS; RADIATIONS

Optional Information

Notes
278 refs.; Available from the INIS Liaison Officer for France, see the 'INIS contacts' section of the INIS-NKM website for current contact and E-mail addresses: http://www.iaea.org/inis/Contacts/; Also available from Bibliotheque Universitaire de Sciences Universite Paul Sabatier 118 route de Narbonne 31062 Toulouse cedex 09, (France)